View clinical trials related to Melanoma.
Filter by:To characterize and quantify immune cells expressing the Interleukine 4 induced gene 1 (IL4I1) immunosuppressive enzyme in the blood and in tissue of melanoma patients (primary tumor, sentinel lymph nodes and cutaneous metastases). Then, to compare the results obtained in different clinical settings: - in cases of progression of the disease slower or faster compared to the prognosis established by clinical and pathological data - before and after treatments with immunotherapy (anti Programmed Death ligand 1 (anti-PD1) or anti-PD1 and anti Cytotoxic T Lymphocyte associated protein 4 (anti-CTLA-4)) and / or targeted therapies (BRAF inhibitors and /or methyl ethyl ketone (MEK)).
This is a run-in, randomized, non-comparative, phase II study designed according to a two stages optimal design by Simon. This phase II design will be preceded by a safety evaluation after the first cohort of 6 patients to preserve a high-grade of overlapping and/or unexpected toxicity rate. The study will assess the immune-objective response rate (iORR) (assessed using iRECIST criteria) of nivolumab combined with ipilimumab and guadecitabine or nivolumab combined with ipilimumab, in Melanoma and non-small cell lung cancer (NSCLC) patients resistant to anti-PD-1/PD-L1 therapy. Immune biologic correlates to treatment will be assessed as exploratory endpoints.
In view of the fact that neoadjuvant therapy for malignant melanoma is in the exploratory stage, and the current data on neoadjuvant immunology are mainly from European and American populations, it is necessary to carry out clinical trials in the status of neoadjuvant immunotherapy for patients with melanoma in China. Toripalimab has been extensively studied in the field of malignant melanoma, and its effectiveness and safety have been proven. Therefore, the investigators initiated a single-arm exploratory study to investigate the efficacy and safety of Toripalimab in neoadjuvant treatment of patients with BRAF V600 wild-type malignant melanoma.
ATRC-101-A01 is a Phase 1b, open-label dose escalation and expansion trial of ATRC-101, an engineered fully human immunoglobulin G, subclass 1 (IgG1) antibody derived from a naturally occurring human antibody. The safety, tolerability, PK, and biological activity of ATRC-101 will be characterized when administered every two weeks (Q2W) or every 3 weeks (Q3W) as a monotherapy or in combination with other anticancer agents.
To evaluate if surgical removal of residual disease adds benefit in stage IV melanoma patients with partial response or stable disease after a minimum 9 months of first-line PD-1 inhibition. Primary endpoint: Disease-free survival (DFS) at 12 months.
This study was a prospective, single-arm, multi-channel, multicenter, non-interventional real-world study to evaluate the safety and efficacy of Toripalimab injection in the treatment of unresectable or metastatic melanoma with previously systemic failure . The study population currently included only in the melanoma cohort-unresectable or metastatic melanoma patients who had previously failed systemic therapy. If new indications are approved during the implementation of the project, patients with new indications using Toripalimab injection will also be included in this study as a new cohort.This study uses offline (physical hospital) and online (DTP pharmacy and Lingke (Yinchuan) Internet hospital) to collect data and information, relying on Lingke technology (Beijing) Co., Ltd. EDC (Medical Research Cloud) database for data collection and processing. The classification of adverse events was based on the general toxicity evaluation standard NCI CTCAE 5.0 of the National Institute of Oncology (Chinese version).
A multicenter open-label phase 1/1b study to evaluate the safety and preliminary efficacy of SO-C101 as monotherapy and in combination with pembrolizumab in patients with selected advanced/metastatic solid tumors
Aim of study: To collect data for a new image-guided diagnostic algoritm, enabling the investigators to differentiate more precisely between benign and malignant pigmented tumours at the bedside. This study will include 60 patients with four different pigmented tumours: seborrheic keratosis (n=15), dermal nevi (n=15), pigmented basal cell carcinomas (n=15), and malignant melanomas (n=15), these four types of tumours are depicted in Fig.1, and all lesions will be scanned by four imaging technologies, recruiting patients from Sept 2019 to May 2020. In vivo reflectance confocal microscopy (CM) will be used to diagnose pigmented tumours at a cellular level and provide micromorphological information5;6. Flourescent CM will be applied to enhance contrast in surrounding tissue/tumours. Optical coherence tomography (OCT), doppler high-frequency ultrasound (HIFU) and photoacustic imaging (also termed MSOT, multispectral optoacustic tomography) will be used to measure tumour thickness, to delineate tumours and analyze blood flow in blood vessels. Potential diagnostic features from each lesion type will be tested. Diagnostic accuracy will be statistically evaluated by comparison to gold standard histopathology
The primary objective of this pilot study is to assess the feasibility of mobilizing PD-1+ T cells to the peripheral blood after a single treatment with tremelimumab/durvalumab in patients with treatment naïve metastatic melanoma.
This phase II trial studies how well encorafenib and binimetinib work before surgery in treating patients with BRAF V600-mutated stage IIIB-D melanoma that has spread to the lymph nodes. Encorafenib and binimetinib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. This trial also studies how well 18F-FLT positron emission tomography (PET)/computed tomography (CT) works in predicting the response of melanoma to encorafenib and binimetinib. 18F-FLT is an imaging agent, sometimes called a tracer. PET and CT are types of imaging scans. Using 18F-FLT PET/CT together with encorafenib and binimetinib may provide more information on melanoma over time.